文章摘要
殷跃平,王鲁琦,赵鹏,张枝华,黄波林,王雪冰.三峡库区高陡岸坡溃屈失稳机理及防治研究[J].水利学报,2022,53(4):379-391
三峡库区高陡岸坡溃屈失稳机理及防治研究
Crashed failure mechanism & prevention of fractured high-steep slope in the Three Gorges Reservoir,China
投稿时间:2021-11-09  
DOI:10.13243/j.cnki.slxb.20210996
中文关键词: 三峡库区  高陡岸坡  损伤劣化  溃屈失稳
英文关键词: Three Gorges Reservoir  high-steep reservoir banks  damage evolution  crashed failure
基金项目:国家自然科学基金项目(42077234);中国博后面上基金项目(2021M700608);重庆市地质灾害防治中心科研项目(KJ-2021047)
作者单位
殷跃平 中国地质环境监测院, 北京 100081 
王鲁琦 重庆大学 土木工程学院, 重庆 400045 
赵鹏 重庆市二零八地质环境研究院有限公司, 重庆 400700 
张枝华 重庆市二零八地质环境研究院有限公司, 重庆 400700 
黄波林 三峡大学 防灾减灾湖北重点实验室, 湖北 宜昌 443002 
王雪冰 中国地质环境监测院, 北京 100081 
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中文摘要:
      本文对三峡工程蓄水运行期间岩体损伤劣化导致高陡岸坡失稳机理进行了研究。三峡峡谷地段岩体具有上硬下弱的二元易滑地质结构,位于水库消落区的相对脆弱岩体易于出现损伤劣化并导致强度下降。在现场调查及监测基础上,本文建立了水位下降干燥状态、水位上升饱和状态及过渡状态下消落区劣化岩体的损伤本构模型,提出了采用水位周期涨落后劣化带的峰值应力与劣化带有效应力之比作为高陡岸坡危岩溃屈失稳稳定系数的定量评价方法。对巫峡段箭穿洞危岩进行了应用研究,结果表明,本文所提出的稳定性评价方法可以很好地表征高陡岸坡宏观塌落、变形和基座应力非线性增加等演化状态,弥补了常规极限平衡稳定性分析方法不能准确刻画溃屈失稳演化过程的缺陷。针对高陡岸坡的溃屈失稳破坏模式,提出了基座劣化岩体补强加固的防护方案,为三峡库区高陡危岩的风险管控提供了支撑。
英文摘要:
      This paper studies the damage evolution of the high-steep reservoir banks caused by the water storage operation of the Three Gorges Project. It is prone to become unstable for the rocky bank located in the canyon area with the dual geological structure of hard at the upper and soft at the lower layers. The strength of the base rock mass in the fluctuation zone tend to decrease due to the deterioration. On the basis of on-site investigation and long-term monitoring,the damage constitutive models of base rock mass under dry, saturated, and transition states were established. A quantitative evaluation method was proposed, and the ratio of the peak stress to the effective stress of the fluctuation zone was used as the stability factor of the crashed failure. The application research of Jianchuandong dangerous rock mass in Wuxia Gorge was carried out. The results showed that the stability evaluation method proposed in this paper could track the evolution states of macro slump,deformation and nonlinear increase of base pressures. Compared to the traditional limit equilibrium stability analysis method,this new method could reflect the process from damage to collapse. As for the crashed failure of high-steep rocky bank,the reinforcement program of the base rock mass was formulated. The related contents can provide guidance for the risk management of high-steep rocky bank in the Three Gorges Reservoir Area.
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